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Datei
CppTest.cpp
namespace Peripheral { using reg32_t =uint32_t; using reg16_t =uint16_t; constexpr reg32_t PERIPH_BASE = 0x40000000U; constexpr reg32_t APB1PERIPH_BASE = PERIPH_BASE; constexpr reg32_t APB2PERIPH_BASE = PERIPH_BASE + 0x00010000UL; constexpr reg32_t AHB1PERIPH_BASE = PERIPH_BASE + 0x00020000UL; constexpr
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PDF
BC847BS_2xnpn.pdf
Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT Per transistor VCBO collector-base voltage open emitter − 50 V VCEO collector-emitter voltage open base − 45 V VEBO emitter-base voltage open collector − 5 V C collector current (DC) − 100 mA CM peak collector current − 200 mA BM peak
in „BC547 matched“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cd00000902-1795594.pdf
Absolute maximum ratings Value Symbol Parameter NPN BDX53B BDX53C Unit PNP BDX54B BDX54C V Collector-base voltage (I = 0) 80 100 V CBO E V Collector-emitter voltage (I = 0) 80 100 V CEO B VEBO Emitter-base voltagC (I = 0) 5 V IC Collector current 8 A CM Collector peak current (repetitive) 12 A IB Base current
in „[V] 117St. PNP Darlington Transistor BDX54C - TO220“ · Markt ·
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K4B4G1646Q-Samsung.pdf
- e (4nCK,10ns) (4nCK,10ns) (4nCK,7.5ns) (4nCK,7.5ns) Four activate window for 1KB page size tFAW 40 - 37.5 - 30 - 30 - ns e Four activate window for 2KB page size tFAW 50 - 50 - 45 - 40 - ns e 1.35V tIS(base) 215 - 140 - 80 - 60 - ps b,16 AC160 tIS(base) 365 - 290 - 205 - 185 - ps b,16,27 Command and
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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SL43-E3-57T_Diode_Schottky_4A_30V_SMD-Gehaeuse_DO214.pdf
polarity protection applications. PRIMARY CHARACTERISTICS MECHANICAL DATA IF(AV) 4.0 A VRRM 20 V, 30 V, 40 V Case: SMC (DO-214AB) Molding compound meets UL 94 V-0 flammability rating IFSM 150 A Base P/N-E3 - RoHS-compliant, commercial grade VF 0.31 V, 0.35 V Base P/N-M3 - halogen-free, RoHS-compliant, commercial TJmax. 125 °C grade Package SMC (DO-214AB) Base P/NHE3_X - RoHS-compliant and AEC-Q101 qualified Base P/NHM3_X - halogen-free, RoHS-compliant, and Circuit configuration Single AEC-Q101 qualified (“_X” denotes revision code e.g. A, B, .....) Terminals
in „Schottky diode / Uf kleiner als 0,2V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SL43-E3-57T_Diode_Schottky_4A_30V_SMD-Gehaeuse_DO214.pdf
polarity protection applications. PRIMARY CHARACTERISTICS MECHANICAL DATA IF(AV) 4.0 A VRRM 20 V, 30 V, 40 V Case: SMC (DO-214AB) Molding compound meets UL 94 V-0 flammability rating IFSM 150 A Base P/N-E3 - RoHS-compliant, commercial grade VF 0.31 V, 0.35 V Base P/N-M3 - halogen-free, RoHS-compliant, commercial TJmax. 125 °C grade Package SMC (DO-214AB) Base P/NHE3_X - RoHS-compliant and AEC-Q101 qualified Base P/NHM3_X - halogen-free, RoHS-compliant, and Circuit configuration Single AEC-Q101 qualified (“_X” denotes revision code e.g. A, B, .....) Terminals
in „1N5817 Schottky Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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TIP120_bis_TIP_127.pdf
RATINGS Symbol Parameter Value Unit NPN TIP120 TIP121 TIP122 PNP TIP125 TIP126 TIP127 VCBO Collector-Base Voltage EI = 0) 60 80 100 V VCEO Collector-Emitter VoltageB(I = 0) 60 80 100 V VEBO Emitter-Base Voltage CI = 0) 5 V IC Collector Current 5 A CM Collector Peak Current 8 A IB Base Current 0.1 A Ptot
in „Stromsenke / el. Last“ · Analoge Elektronik und Schaltungstechnik ·
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6928.pdf
ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit NPN TIP29A TIP29C PNP TIP30A TIP30C VCBO Collector-Base Voltage EI = 0) 60 100 V VCEO Collector-Emitter VoltageB(I = 0) 60 100 V VEBO Emitter-Base Voltage CI = 0) 5 V IC Collector Current 1 A ICM Collector Peak Current 3 A IB Base Current 0.4 A o P tot Total
in „PNP Transistor problem (TIP30A)“ · Analoge Elektronik und Schaltungstechnik ·
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MOSFET_oder_bipolarer_Transistor__Zetex.pdf
to be careful what conditions are specified. For example, bipolar transistors require sufficient base current to achieve the lowest R CE(sat)lues, and when calculating power losses the base drive loss must be taken into account. High gain devices have been developed to minimize these losses. Bipolar
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
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ARJP11A.pdf
RJ45PoE&PoE+10/100Base-TXJackwithMagneticModule ARJP11A RoHS Compliant 16.26x13.84x21.59mm FEATURES: APPLICATIONS: | | | | | | | | | | | | | | •PoE&PoE+ •10/100base-TXLAN •AvailablewithorwithoutLED •NIC, LoMandPC •SuitableCAT5&
in „Suche Quelle für 10/100 Base-TX POE-Ethernet RJ45-Buchse mit Übertragern und Gleichrichtern“ · Mikrocontroller und Digitale Elektronik ·
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ds1879a.pdf
timer A The GPI/O registers are as follows: 4 39:32 Low byte joystick timer B ▯ Configuration_Device_Base+2h 5 47:40 Low byte joystick timer C 6 55:48 Low byte joystick timer D Bits 6:0 of this register set the state of the GPO[6:0] pins that are enabled as outputs and are not mapped 7 59:56 High nibble
in „Informationen über ISA-Karten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Startup.lst
line 85 in file Startup.s Uses At line 447 in file Startup.s At line 449 in file Startup.s __heap_base 00000000 Symbol: __heap_base Definitions At line 84 in file Startup.s Uses None Comment: __heap_base unused __heap_limit 00000000 Symbol: __heap_limit Definitions At line 86 in file Startup.s Uses None
in „LPC2294 Boot Loader Mode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Arrr12.asm
uni15 = r31 ;*uni15 z_hi ;**constant**************************************;constant_defs .equ cg_base = $0500 ;char_generator .equ msg_base = $0200 ;text_blocks .equ msg_len = $40 ;message_length .equ col_end = $40 ;last_column ;**variable**************************************;variable_defs .cseg ;codesegment
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Datei
myfirst168.s
GPIOB_BASE + 0x00 @<<<<< .equ GPIOB_AFRL , GPIOB_BASE + 0x20 @<<<<< .equ GPIOB_AFRH , GPIOB_BASE + 0x24 .equ GPIOA_BASE , 0x40020000 .equ GPIOA_MODER , GPIOA_BASE + 0x00 .equ GPIOA_OTYPER , GPIOA_BASE + 0x04 .
in „STM32CubeIDE - kann man dem gdb server einen Schalter mitgeben?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup912.s
SCU_SYSSTAT_LOCK , 0x01 /* Check for PLL locked */ # APB Bridge 1 & 2 definitions (Peripherals) .equ APB0_BUF_BASE , 0x48001802 /* APB Bridge 0 Buffered Base Address */ .equ APB0_NBUF_BASE , 0x58000000 /* APB Bridge 0 Non-buffered Base Address */ .equ APB1_BUF_BASE , 0x4C000000 /* APB Bridge 1 Buffered Base Address */ .equ APB1_NBUF_BASE , 0x5C000000 /* APB Bridge 1 Non-buffered Base Address */ # ETM Definitions .equ IOPORT2_ETM_ENABLE_BASE , 0x5C00204C .equ IOPORT6_ETM_ENABLE_BASE , 0x5C00205C .equ IOPORT2_ETM_ENABLE_VAL , 0x0000FFFF
in „ganz einfaches ARM9 Beispiel mit gcc“ · Mikrocontroller und Digitale Elektronik ·
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OpAmp_MC3407x_KapazitiveLast.pdf
MC33072DR2G SOIC−8 Dual (Pb−Free) TA= −40° to +85°C 2500 / Tape & Reel MC33072ADR2G SOIC−8 (Pb−Free) MC34072VDR2G SOIC−8 2500 / Tape & Reel (Pb−Free) TA= −40° to +125°C NCV33072DR2G* SOIC−8 2500 / Tape & Reel (Pb−Free) MC34074ADR2G SOIC−14 (
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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74980111211-1723921.pdf
release Kunde / customer : Artikelnummer / part number : 74980111211 LAN-Übertrager WE-RJ45LAN 10/100BaseT Bezeichnung : description : LAN-Transformer WE-RJ45LAN 10/100BaseT DATUM / DATE : 2012-09-24 A Mechanische Abmessungen / dimensions : B Lötpad / soldering spec. : C Elektrische Eigenschaften / electrical
in „Suche Distributor für Notebook RJ45 Steckverbinder“ · Markt ·
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TS13003_D07.pdf
126 Pin Definition: 1. Emitter 1. Emitter PRODUCT SUMMARY 2. Collector 2. Collector BVCEO 400V 3. Base 3. Base BVCBO 700V C 1.5A VCE(SAT) 0.8V @ IC/ B = 0.5A / 0.1A Features Block Diagram ● High Voltage ● High Speed Switching Structure ● Silicon Triple Diffused Type ● NPN Silicon Transistor Ordering
in „Transistor "13003" (TO92)“ · Mikrocontroller und Digitale Elektronik ·
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KSD_880.pdf
60 V CEO VEBO Emitter-Base Voltage 7 V IC Collector Current 3 A B Base Current 0.3 A PC Collector DissipatioC (T =25°C) 30 W TJ Junction Temperature 150 °C TSTG Storage Temperature - 55 ~ 150 °C Electrical Characteristics TC=
in „Suche Fairchild KSD880 und KSB 834 (Power Amplifier)“ · Mikrocontroller und Digitale Elektronik ·
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BUT11AF.pdf
Voltage CEO : BUT11F 400 V : BUT11AF 450 V V Emitter-Base Voltage 9 V EBO IC Collector Current (DC) 5 A I *Collector Current (Pulse) 10 A CP IB Base Current (DC) 2 A I *Base Current (Pulse) 4 A BP PC Collector DissipatioC (T =25°C) 40 W TJ Junction Temperature
in „BUT11AX mit BUT11AF austauschen?“ · Mikrocontroller und Digitale Elektronik ·
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BC328-1.pdf
CE= -1V,CI = -300mA 40 V (sat) Collector-Emitter Saturation VoltI = -500mA, I = -50mA -0.7 V CE C B VBE (on) Base-Emitter On Voltage V CE= -1V,CI = -300mA -1.2 V f Current Gain Bandwidth Product V = -5V, I = -10mA, f=20MHz
in „Schaltungskontrolle - 7 Segment an 12V - Atmega an 5V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bourns_bd241-1159109.pdf
BD241A 60 Collector-emitter voltCge (I = 30 mA) BD241B VCEO 80 V BD241C 100 Emitter-base voltage V 5 V EBO Continuous collector current IC 3 A Peak collector current (see Note 1) I 5 A CM Continuous base current IB 1 A Continuous device dissipation at (or below) 25°C case temperature (see
in „[V] Komplementäre 27St. BD241A und 10St BD242A und Reste geschenkt“ · Markt ·
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PDF
bourns_bd242-1159279.pdf
-45 BD242A -60 Collector-emitter voltCge (I = -30 mA) BD242B VCEO -80 V BD242C -100 Emitter-base voltage V -5 V EBO Continuous collector current C -3 A Peak collector current (see Note 1) I -5 A CM Continuous base current B -1 A Continuous device dissipation at (or below) 25°C case temperature
in „[V] Komplementäre 27St. BD241A und 10St BD242A und Reste geschenkt“ · Markt ·
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PDF
TS13003_D07.pdf
126 Pin Definition: 1. Emitter 1. Emitter PRODUCT SUMMARY 2. Collector 2. Collector BVCEO 400V 3. Base 3. Base BVCBO 700V C 1.5A VCE(SAT) 0.8V @ IC/ B = 0.5A / 0.1A Features Block Diagram ● High Voltage ● High Speed Switching Structure ● Silicon Triple Diffused Type ● NPN Silicon Transistor Ordering
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Fehlermeldung-gcc54.txt
bits/allocator.h:46, from /usr/include/c++/5/string:41, from /usr/include/c++/5/bits/locale_classes.h:40, from /usr/include/c++/5/bits/ios_base.h:41, from /usr/include/c++/5/ios:42, from /usr/include/c++/5/ostream:38, from /usr/include/c++/5/iostream:39, from util/uuid.hpp:8, from schematic/schematic.hpp
in „Horizon EDA [War: Neues, halbfertiges Elektronik-CAD-Programm]“ · Projekte & Code ·
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moxa-awk-3131a-series-datasheet.pdf
Standards IEEE 802.3 for 10BaseT IEEE 802.3u for 100BaseT(X) IEEE 802.3ab for 1000BaseT(X) IEEE 802.3at for PoE IEEE 802.1Q for VLAN Tagging IEEE 802.1X for authentication IEEE 802.1D-2004 for Spanning Tree Protocol IEEE 802.1w for
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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Datei
HCT595.c
(GPIO_PartialRemap_TIM1,ENABLE); /* Der Timer clock'ed mit 36Mhz, einstellen auf 200Hz */ TIM_TimeBaseStructInit(&TimerBaseInitStructure); TimerBaseInitStructure.TIM_CounterMode = TIM_CounterMode_Up; TimerBaseInitStructure.TIM_Prescaler = tim_presc; TimerBaseInitStructure.TIM_Period = DCValue; TimerBaseInitStructure.TIM_ClockDivision = TIM_CKD_DIV1; TIM_TimeBaseInit(TIM1, &TimerBaseInitStructure); /* Compare Register 1 konfigurieren (Display) */ TimerOCInitStructure.TIM_OCMode = TIM_OCMode_PWM1; TimerOCInitStructure.TIM_OutputState = TIM_OutputState_Enable;
in „EmBitz Debugging Problem mit STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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683405.pdf
t N 0.6 D o E 0.2 c L VCE= 5.0 V o A 0.1 u 0.4 M p Normalized to O 0.0 l T== 25°C N e 0.2 A r -60 -40 -20 0 20 40 60 80 100 10 100 1000 s TA- AMBIENT TEMPERATURE (°C) RBE- BASE RESISTANCE (kΩ) Fig. 6 Collector-Emitter SaturationVoltage vs. Collector Current Fig. 5 CTR vs. RBE (Saturated) 1.0 100 ) E
in „optokoppler_Eingangsspannung“ · Mikrocontroller und Digitale Elektronik ·
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BD433_42_CDIL.pdf
RATINGS DESCRIPTION SYMBOL BD433 BD435 BD437 BD439 BD441 UNIT BD434 BD436 BD438 BD440 BD442 Collector Base Voltage V CBO 22 32 45 60 80 V Collector Emitter Voltage V CES 22 32 45 60 80 V Collector Emitter Voltage V CEO 22 32 45 60 80 V Emitter Base Voltage V EBO 5.0 V Collector Current C 4.0 A Collector
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·
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tl497a.pdf
SMALL-OUTLINE PLASTIC DIP FORM (D) (N) SMALL-OUTLINE (Y) (PW) 0⋅C to 70⋅C TL497ACD TL497ACN TL497ACPW TL497AY –40⋅C to 85⋅C TL497AID TL497AIN — — The D and PW packages are only taped and reeled. Add the suffix R to the device type (e.g., TL497ACPWR). Chip forms are tested at 25⋅C. functional block diagram BASE † 11 BASE DRIVE † 12 13 Current CUR LIM SENS Limit Sense FREQ CONTROL 3 INHIBIT 2 Oscillator 1 COMP INPUT 10 COL OUT 4 SUBSTRATE 1.2-V 8 Reference EMIT OUT 6 CATHODE 7 ANODE † BASE and BASE DRIVE are used for
in „Negative Spannung...“ · Analoge Elektronik und Schaltungstechnik ·
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History18opamp.pdf
amplifier. The feedback loop formed by Q18/Q19/ Q20 forces the voltage across R9 to equal about 0.7V (the base-emitter voltage of Q18). The current through Q19/Q20 is consequently 0.7V/10kΩ. This current is augmented by two 0.7V/40kΩ contributions by Q7 and Q8 to set the base current of PNP transistor Q13 equal
in „OPV ~ Bj. 1972“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
std888.pdf
1 Electrical ratings Table 1. Absolute maximum rating Symbol Parameter Value Unit VCBO Collector-base voltagE (I = 0) -45 V VCEO Collector-emitter voltaBe (I = 0) -30 V VEBO Emitter-base voltageC(I = 0) -6 V IC Collector current -5 A I Collector peak current (t < 5ms) -10 A CM P P tot Total dissipation
in „SMD Transistor (Leistung) bei Reichelt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
GearMotor.c
steps GEARMOTORencoderSteps = 0; GEARMOTORcurrentPosition = 0; GEARMOTORcurrentSpeed = 0; TIM_TimeBaseInitTypeDef TIM_TimeBase_InitStructure; TIM_OCInitTypeDef TIM_OC_InitStructure; NVIC_InitTypeDef NVIC_InitStructure; // TIM1 ein 40 Hz Signal für (PID?) velocity compute TIM_Cmd(TIM1, DISABLE); TIM_DeInit(TIM1); TIM_TimeBase_InitStructure.TIM_ClockDivision = TIM_CKD_DIV1; TIM_TimeBase_InitStructure.TIM_CounterMode = TIM_CounterMode_Up; TIM_TimeBase_InitStructure.TIM_Period = 999; TIM_TimeBase_InitStructure.TIM_Prescaler
in „STM32F103 USART1 affects TIM1? TIM1 interrupt frequenz varying“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eeprom.h
_8 ((uint32_t)0x08004000) /* Base @ of Page 8, 2 Kbytes */ #define ADDR_FLASH_PAGE_9 ((uint32_t)0x08004800) /* Base @ of Page 9, 2 Kbytes */ #define ADDR_FLASH_PAGE_10 ((uint32_t)0x08005000) /* Base @ of Page 10, 2 Kbytes */ #define
in „STM32 Virtueller EEPROM in Flash“ · Mikrocontroller und Digitale Elektronik ·
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BC337.pdf
Test Condition Min Typ Max Unit Current gain -16up 100 160 250 -25 V CE =1 V,CI = 100 mA 160 250 400 -40 250 400 630 DC Current Gain hFE — Current gain -16up 60 130 — -25 V CE =1 V,CI = 300 mA 100 200 — -40 170 320 — BC337 V CE= 45 V — 2 100 nA Collector-Emitter Cutoff Current338 CES V CE= 25 V — 2 100
in „Relais oder Transistoren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A100_BC337_BC338_VIS.pdf
Test Condition Min Typ Max Unit Current gain -16up 100 160 250 -25 V CE =1 V,CI = 100 mA 160 250 400 -40 250 400 630 DC Current Gain hFE — Current gain -16up 60 130 — -25 V CE =1 V,CI = 300 mA 100 200 — -40 170 320 — BC337 V CE= 45 V — 2 100 nA Collector-Emitter Cutoff Current338 CES V CE= 25 V — 2 100
in „LED-Flasher - Findet jemand einen Fehler“ · Mikrocontroller und Digitale Elektronik ·
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AL5801.pdf
resistor R base, for stabilizing the LED current. Figure 14 Constant LED Current Temperature Compensation for AL5801 The voltage drop V RSET in the sense resistor REXT should be set to be 40 to 100mV higher than the
in „Suche Konstantstromquelle effizient, klein und günstig.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2SC5001.pdf
Complementsthe2SA1834. 5 5 . 9 0 1 5 z 0.75 2 Packaging specificationsand h FE . Type 2SC5001 (1)Base 0.92.3 0.65 8 (1) (2) (3)2.3 00.5 Package CPT3 (2)Collector 1.0 hFE QR (3)Emitter Code TL Basic ordering unit (pieces) 2500 z Absolutemaximumratings (Ta=25 C° Parameter Symbol Limits Unit Collector-base voltage VCBO 30 V Collector-emitter voltage VCEO 20 V Emitter-base voltage VEBO 6 V IC 10 A Collector current CP 15 A ∗ Base current IB 2 A Collector power dissipation 1 W PC 10 W(Tc=25 °C) Junction temperature T j 150 °C Storage temperature Tstg −55 to +150 °C ∗ Single
in „Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc337.pdf
Empfohlene komplementäre PNP-Transistoren BC337-16 BC338-16 BC337-25 BC338-25 BC327 ... BC328 BC337-40 BC338-40 2 2 Maximum ratings ) Grenzwerte ) BC337 BC338 Collector-Emitter-volt. – Kollektor-Emitter-Spannung E-B short VCES 50 V 30 V Collector-Emitter-volt. – Kollektor-Emitter-Spannung B open V CEO
in „chinesische Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S852T_Temic.pdf
input impedance at 945 MHz 1 13 581 94 9280 2 3 Marking: 852 Plastic case (SOT 23) 1 = Collector; 2 = Base; 3 = Emitter Absolute Maximum Ratings Parameters Symbol Value Unit Collector-base voltage V 12 V CBO Collector-emitter voltage VCEO 6 V Emitter-base voltage V 2 V EBO Collector current IC 8 mA Total
in „ISM Empfänger mit kleinstem Standby“ · HF, Funk und Felder ·
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Datei
stm32f446.c
uint32_t *RCC_AHB3ENR = (void *)(RCC_BASE + 0x38); volatile uint32_t *RCC_APB1ENR = (void *)(RCC_BASE + 0x40); volatile uint32_t *RCC_APB2ENR = (void *)(RCC_BASE + 0x44); uint32_t val; *RCC_CR |= RCC_CR_HSEON; while (!(*RCC_CR & RCC_CR_HSERDY
in „Linux auf dem STM32 externes RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC547_datasheet.pdf
100 I ,BASECURRENT(mA) I ,COLLECTORCURRENT(mA) B C Figure 3. Collector Saturation Region Figure 4. Base–Emitter Temperature Coefficient BC547/BC548 ) H 10 M400 T C300 7.0 TA=25⋅C D O200 F P ( 5.0 Cib H E I N W V =10V T D100 CE C 3.0 A 80 TA=25⋅C P C B A ob N 60 , 2.0 A C – T 40 E R 30 U 1.0 , 20 0.4 0.6
in „NPN mit PNP Transistor ersetzen für SHARP Pocket-Interface?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
include <util/delay.h> // // Der Prescaler muss so gewählt werden, dass der Ausdruck // für MILLISEC_BASE einen Wert kleiner als 128 ergibt // MILLISEC_BASE ist der Timerwert, der 1 Millisekunde Zeitdauer ergeben // soll. // #define PRESCALER 8 #define PRESCALER_BITS (1<<CS01) #define MILLISEC_BASE ( F_CPU
in „Servo Delay Modul (Atmega8)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Uponor_IM_Smatrix_Base_PRO_MODBUS-RTU_EN_1090255_032018.pdf
Temperature (absolute value) 15 0x000F Celsius (˚C) Fahrenheit (˚F) Data value Hex value 20 0x0014 -40.0 -40.0 -400 0xFE70 25 0x0019 -30.0 -22.0 -220 0xFF24 30 0x001E -20.0 -4.0 -40 0xFFD8 35 0x0023 -17.8 0.0 0 0x0 40 0x0028 -10.0 14.0 140 0x8C 45 0x002D 50 0x0032 -5.0 23.0 230 0xE6 55 0x0037 0.0 32.0
in „Modbus Sniffer mit Linux“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmx-led-module.c
testen, in der Anwendung entfernen // Test values volatile uint8_t tmp_main; const uint8_t t1[20]={27, 40, 3, 17, 150, 99, 5, 9}; const uint8_t t2[20]={27, 40, 3, 0, 150, 99, 5, 9}; const uint8_t t3[20]={20, 19, 18, 17, 16, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1}; const uint8_t t4[20]={0, 0, 0
in „AVR Studio Bug, falsches Register wird geladen“ · Mikrocontroller und Digitale Elektronik ·
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p5.pdf
Gain General Purpose Power Darlington TR Complement to BDX34/34A/34B/34C respectively 1 TO-220 1.Base 2.Collector 3.Emitter NPN Epitaxial Silicon Transistor Absolute Maximum Ratings T C25°C unless otherwise noted Symbol Parameter Value Units VCBO Collector-Base Voltage : BDX33 45 V : BDX33A 60 V : BDX33B
in „BDX33C zur LED Steuerung wird heiß“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
RIN32M3_CL.h
+ 0x00300UL) #define RIN_UART1_BASE (PERI_BASE + 0x00400UL) #define RIN_IIC0_BASE (PERI_BASE + 0x00500UL) #define RIN_IIC1_BASE (PERI_BASE + 0x00600UL) #define RIN_WDT_BASE (PERI_BASE + 0x00700UL) #define RIN_SYS_BASE (PERI_BASE + 0x10000UL
in „R-IN32M3-CL (Cortex-M3): Wie funktioniert Senden/Empfangen auf dem Feldbus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S9018.pdf
CO., LTD TO-92 Plastic-Encapsulate Transistors TO – 92 S9018 TRANSISTOR (NPN) 1.EMITTER FEATURES 2.BASE z High Current Gain Bandwidth Product 3.COLLECTOR MAXIMUM RATINGS (T a25℃ unless otherwise noted) Symbol Parameter Value Unit VCBO Collector-Base Voltage 25 V VCEO Collector-Emitter Voltage 18 V VEBO
in „Suche Infos zum Eigenbau eines Dip Meter“ · HF, Funk und Felder ·
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Datei
fritzbox_7590_log.txt
chained_irq 100 irq_base 101 [ 0.666759][ T1] dma-grx500 1c100000.dma: Init done - rev: a, ports: 1, channels: 16 [ 0.675241][ T1] dma-grx500 1c200000.dma: dma2rx base address bc200000 chained_irq 117 irq_base 118 [ 0.686584
in „FritzBox 7590 Boot Loop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC327.PDF
Collector-Emitter Voltage BC328 –VCES 30 V BC327 45 Collector-Emitter Voltage BC328 –V CEO 25 V Emitter-Base Voltage –VEBO 5 V Collector Current –IC 800 mA Peak Collector Current –ICM 1 A Base Current –IB 100 mA Power Dissipation at Tamb = 25°C Ptot 625 (1) mW (1) Thermal Resistance Junction to Ambient Air
in „Bitte, bitte einmal überprüfen“ · Mikrocontroller und Digitale Elektronik ·